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首页> 外文期刊>Acta biomaterialia >Mechanical properties and cytocompatibility of poly(epsilon-caprolactone)-infiltrated biphasic calcium phosphate scaffolds with bimodal pore distribution.
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Mechanical properties and cytocompatibility of poly(epsilon-caprolactone)-infiltrated biphasic calcium phosphate scaffolds with bimodal pore distribution.

机译:具有双峰孔分布的聚(ε-己内酯)浸润的双相磷酸钙支架的力学性能和细胞相容性。

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Biphasic calcium phosphate scaffolds have attracted interest because they have good osteoconductivity and a resorption rate close to that of new bone ingrowth, but their brittleness limits their potential applications. In this study, we show how the infiltration of biphasic calcium phosphate scaffolds with poly(epsilon-caprolactone) improves their mechanical properties. It was found that the polymer effectively contributes to energy to failure enhancement in bending, compressive and tensile tests. The main toughening mechanism in these composites is crack bridging by polymer fibrils. The presence of fibrils at two different size scales--as found in scaffolds with a bimodal pore distribution--results in a more effective toughening effect as compared to scaffolds with a monomodal pore size distribution, especially in the early stage of mechanical deformation. An optimized infiltration process allowed the preservation of micropore interconnection after infiltration, which is beneficial for cells adhesion. In addition, it is shown that biphasic calcium phosphates infiltrated with poly(epsilon-caprolactone) are cytocompatible with human bone marrow stromal cells, which makes them good candidates for bone substitution.
机译:双相磷酸钙支架吸引了人们的兴趣,因为它们具有良好的骨传导性和接近于新骨向内生长的吸收率,但是其脆性限制了其潜在的应用。在这项研究中,我们显示了聚(ε-己内酯)渗透双相磷酸钙支架如何改善其机械性能。发现在弯曲,压缩和拉伸测试中,聚合物有效地促进了破坏增强的能量。这些复合材料的主要增韧机理是聚合物原纤维的裂纹桥接。与具有单峰孔径分布的脚手架相比,在具有双峰孔分布的脚手架中发现的两种不同尺寸尺寸的原纤维会产生更有效的增韧效果,尤其是在机械变形的早期阶段。优化的浸润过程允许浸润后保留微孔互连,这对于细胞粘附是有益的。另外,显示了被聚(ε-己内酯)渗透的双相磷酸钙与人骨髓基质细胞具有细胞相容性,这使其成为骨替代的良好候选者。

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